V-shaped supporting rod piece and cable-supported grid device

By designing retractable and lockable V-shaped struts, the problem of fixed length in traditional struts is solved, improving construction flexibility and stability, adapting to different construction environments, and enhancing construction efficiency and structural load-bearing capacity.

CN223523261UActive Publication Date: 2025-11-07HENAN UNIVERSITY OF TECHNOLOGY
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Patent Information

Application Number
CN202423120415.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-11-07
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Traditional cable-supported grid structures have fixed strut lengths that cannot be adjusted, making it difficult to adapt to different environmental conditions on construction sites and affecting project progress and efficiency.

Method used

Design a V-shaped strut member, including a telescopic and lockable second connecting section, with its length fixed by a filler block, combined with a triangular support structure and cable clamp connection to form a stable mechanical structure.

Benefits of technology

It enables flexible adjustment and improved stability of the struts, adapts to different construction environments, improves construction efficiency and structural stability, and enhances load-bearing capacity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of steel structure construction, in particular to a V-shaped supporting rod piece and a cable-supported grid device.The V-shaped supporting rod piece comprises a supporting rod and a cable clamp, the supporting rod comprises a first connecting section, a second connecting section and a third connecting section, and the second connecting section is arranged between the first connecting section and the third connecting section; the length of the second connecting section can be telescopic and locked, and a first lug plate is arranged on the third connecting section; the two supporting rods are arranged on the cable clamp, the two supporting rods are distributed on the cable clamp in a V shape, and the cable clamp is connected with the first lug plate on the third connecting section. According to the V-shaped supporting rod piece provided by the embodiment of the invention, the length of the second connecting section can be adjusted and locked, so that the V-shaped supporting rod piece can be flexibly adjusted according to needs, and the V-shaped supporting rod piece can adapt to different application scenes. Due to the multifunctionality, the practicability of the structure is improved, and different engineering requirements can be better met.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of steel structure construction, in particular to a V-shaped bracing member and a cable-supported grid device. BACKGROUND

[0002] As a modern architectural technology, cable-supported grid structures have been widely used in large public facilities such as stadiums, exhibition centers, and other large public facilities. This structure is favored by the architectural community for its unique lightness, high strength, and aesthetic characteristics.

[0003] However, at the current stage of technological development, cable-supported grid structures still face some challenges. In particular, during construction, traditional bracing designs often lack flexibility, with fixed lengths that cannot be adjusted according to actual construction needs. This problem is particularly prominent on construction sites, as actual construction environments often differ from design drawings, requiring on-site adjustments to adapt to actual conditions. The cable-supported grid structure bracing in the prior art cannot be adjusted in length, which has brought some difficulty to construction, affecting project progress and efficiency. CONTENT OF THE INVENTION

[0004] The purpose of the present application is to provide a V-shaped bracing member and a cable-supported grid device, which can be flexibly adjusted, increasing adaptability and improving construction efficiency.

[0005] To achieve the above-mentioned purpose, in a first aspect, embodiments of the present application provide a V-shaped bracing member, comprising a bracing member and a cable clamp, the bracing member comprising a first connecting segment, a second connecting segment, and a third connecting segment, the second connecting segment being arranged between the first connecting segment and the third connecting segment, the length of the second connecting segment being able to be extended and locked, and the third connecting segment being provided with a first ear plate; two bracing members are arranged on the cable clamp, the two bracing members being arranged in a V-shaped distribution on the cable clamp, and the cable clamp being connected to the first ear plate on the third connecting segment.

[0006] In one embodiment, the second connecting segment comprises a first telescopic end and a second telescopic end, the first telescopic end being connected to the first connecting segment, and the second telescopic end being connected to the third connecting segment, the first telescopic end and the second telescopic end being telescopically connected to adjust the length of the second connecting segment; the second connecting segment further comprises a first filling block, when the second connecting segment reaches a predetermined length, the first filling block fixedly connects the first telescopic end and the second telescopic end to lock the first telescopic end and the second telescopic end.

[0007] In one embodiment, the first telescopic end and the second telescopic end are columnar structures with cavities inside, the cavities of the first telescopic end and the second telescopic end are communicated to form a filling cavity; the second connecting section further comprises a second filling block, when the second connecting section reaches a preset length, the first filling block and the second filling block are installed into the filling cavity of the second connecting section in sequence and fixed, the first filling block is fixedly connected with the first telescopic end and the second telescopic end, the second filling block is fixedly connected with the first telescopic end and the second telescopic end, and the first filling block and the second filling block form a block structure after being fixedly connected, which is adapted to the shape of the filling cavity.

[0008] In one embodiment, the V-shaped bracing rod further comprises a first branch rod, the first branch rod is provided with a second ear plate, the first branch rod is fixedly arranged on the cable clamp through the second ear plate, and the first branch rod is arranged obliquely on a first plane, which is the plane where the two bracing rods are located.

[0009] In one embodiment, the V-shaped bracing rod further comprises a horse path tray, the horse path tray is arranged on the first branch rod, and the horse path tray is provided with a containing groove.

[0010] In one embodiment, the first connecting section, the second connecting section and the third connecting section are coaxially arranged.

[0011] In a second aspect, the embodiments of the present application further provide a cable-supported grid device, comprising a grid frame, a ring cable and a V-shaped bracing rod as described in any of the above embodiments, the first connecting section of the V-shaped bracing rod is provided with a third ear plate, and the first connecting section is connected with the grid frame through the third ear plate; the ring cable is connected with the cable clamp of the V-shaped bracing rod, and the cable clamp provides a mounting position for the ring cable.

[0012] In one embodiment, the cable-supported grid device further comprises a first radial cable and a second branch rod. One end of the first radial cable is connected with the cable clamp, and the other end of the first radial cable is connected with the grid frame; one end of the second branch rod is connected with the first radial cable, and the other end of the second branch rod is connected with the grid frame, and the number of the second branch rods is at least one. When the number of the second branch rods is at least two, the second branch rods are arranged at intervals.

[0013] In one embodiment, the cable-supported grid device further comprises a radial cable support, the radial cable support is used for supporting the grid frame, and the radial cable support and the V-shaped bracing rod are arranged at intervals along the extension direction of the ring cable.

[0014] The radial cable support comprises a third support rod and a second radial cable. One end of the third support rod is connected with the grid frame; one end of the second radial cable is connected with the third support rod, and the other end of the second radial cable is connected with the grid frame.

[0015] In one embodiment, the radial cable support further comprises a fourth support rod and a fifth support rod. One end of the fourth support rod is connected with the third support rod, and the other end of the fourth support rod is connected with the grid frame. The fourth support rod is inclined to the third support rod. One end of the fifth support rod is connected with the grid frame, and the other end of the fifth support rod is connected with the second radial cable. The fifth support rod is arranged in parallel with the third support rod.

[0016] The V-shaped support rod provided by the embodiment of the present application has a second connecting section with a telescopic and lockable length, so that the V-shaped support rod can be flexibly adjusted as needed to adapt to different application scenarios. This multifunctionality increases the practicality of the structure, so that it can better meet different engineering requirements.

[0017] Other features and advantages of the present application will be described in detail in the following specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed in the embodiments. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be considered as limiting the scope. For those skilled in the art, other related drawings can also be obtained without creative labor.

[0019] Figure 1 A structure schematic diagram of one view of one embodiment of a cable-supported grid device provided by the embodiment of the present application;

[0020] Figure 2 A structure schematic diagram of two views of one embodiment of a V-shaped support rod provided by the embodiment of the present application.

[0021] FIGURE:

[0022] 1000 - cable-supported grid device; 1100 - grid frame; 1200 - circumferential cable; 1300 - first radial cable; 1400 - second support rod;

[0023] 1500 - radial cable support; 1520 - third support rod; 1540 - fourth support rod; 1560 - fifth support rod; 1580 - second radial cable;

[0024] 1600 - V-shaped strut member; 1610 - strut; 1611 - first connecting section; 1612 - second connecting section; 1613 - third connecting section; 1612a - first telescopic end; 1612b - second telescopic end; 1612c - first filling block; 1612d - second filling block;

[0025] 1620 - first ear plate; 1630 - second ear plate; 1640 - third ear plate; 1650 - filling cavity; 1660 - first support rod; 1670 - horse stall tray; 1672 - accommodating groove;

[0026] 1680 - cable clamp. DETAILED DESCRIPTION

[0027] In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. The components of the embodiments of the present application described and shown in the drawings can be arranged and designed in various different configurations.

[0028] In the description of the present application, it should be noted that the positions or location relationships indicated by the terms "inner", "outer" and the like are based on the positions or location relationships shown in the drawings, or the positions or location relationships commonly placed when the products of the present application are used, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the indicated devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second" and the like are only used to distinguish the description and cannot be understood as indicating or implying relative importance.

[0029] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "set", "connected" should be understood broadly, for example, can be fixedly connected, can be detachably connected, or integrally connected; can be directly connected, or indirectly connected through an intermediate medium, can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0030] The embodiments of the present application provide a V-shaped strut member 1600 and a cable-supported grid device 1000, and a first aspect, as shown in the drawings, the V-shaped strut member 1600 includes a strut 1610 and a cable clamp 1680. Figure 2

[0031] As shown in the drawings, the V-shaped strut member 1600 includes a strut 1610 and a cable clamp 1680. Figure 2 ​As shown, the brace 1610 includes a first connecting segment 1611, a second connecting segment 1612, and a third connecting segment 1613. The second connecting segment 1612 is arranged between the first connecting segment 1611 and the third connecting segment 1613, and is fixedly connected to the first connecting segment 1611 and the third connecting segment 1613, for example by welding, threaded connection, bolt connection, clamping, or integral molding.

[0032] The second connecting segment 1612 has a length that can be extended and locked. The locking mode of the second connecting segment 1612 can be, for example, threaded locking, bolt locking, or welding fixation.

[0033] The third connecting segment 1613 is provided with a first ear plate 1620.

[0034] The brace 1610 is provided with two on the cable clamp 1680, and the two braces 1610 are distributed in a V shape on the cable clamp 1680. The cable clamp 1680 is connected to the first ear plate 1620 on the third connecting segment 1613. For example, the cable clamp 1680 is fixedly connected to the first ear plate 1620, for example by welding, threaded connection, bolt connection, clamping, or integral molding.

[0035] As shown, Figure 1 The two braces 1610 are distributed in a V shape on the cable clamp 1680, and the two braces 1610 form a stable triangular support, thereby greatly improving the stability of the structure. This stability enables the structure to maintain good anti-deformation ability when subjected to external forces, ensuring the stability of the overall structure.

[0036] The two braces 1610 are distributed in a V shape on the cable clamp 1680, which can effectively disperse and transfer loads, thereby bearing greater weight. This makes the structure have a significant advantage in applications that need to bear heavy pressure, such as bridges, buildings, and other fields.

[0037] The length of the second connecting segment 1612 can be extended and locked, so that the V-shaped brace 1600 can be flexibly adjusted as needed to adapt to different application scenarios. This versatility increases the practicality of the structure, making it better meet different engineering needs.

[0038] As shown, Figure 2 In one embodiment, the second connecting segment 1612 includes a first telescopic end 1612a and a second telescopic end 1612b.

[0039] The first telescopic end 1612a is connected to the first connecting segment 1611. The second telescopic end 1612b is connected to the third connecting segment 1613.

[0040] The first telescopic end 1612a and the second telescopic end 1612b are telescopically connected to adjust the length of the second connecting segment 1612. For example, the first telescopic end 1612a and the second telescopic end 1612b are slidingly telescopically connected, the first telescopic end 1612a is fixedly connected with the first connecting segment 1611, the second telescopic end 1612b is fixedly connected with the third connecting segment 1613, and the fixed connection mode is, for example, welding, threaded connection, bolt connection, clamping or one-piece forming. In another embodiment, the first telescopic end 1612a and the second telescopic end 1612b are telescopically connected by threads, and the first telescopic end 1612a and the second telescopic end 1612b can move axially during relative rotation, thereby adjusting the length of the second connecting segment 1612. The first telescopic end 1612a is rotationally connected with the first connecting segment 1611, and the first telescopic end 1612a is locked in the axial direction with the first connecting segment 1611. The second telescopic end 1612b is rotationally connected with the third connecting segment 1613, and the second telescopic end 1612b is locked in the axial direction with the third connecting segment 1613.

[0041] The second connecting segment 1612 further comprises a first filling block 1612c. When the second connecting segment 1612 reaches a predetermined length, the first filling block 1612c is fixedly connected with the first telescopic end 1612a and the second telescopic end 1612b to lock the first telescopic end 1612a and the second telescopic end 1612b. The fixed connection mode is, for example, welding, bolt connection or clamping.

[0042] The second connecting segment 1612 can be flexibly adjusted in length by the telescopic connection of the first telescopic end 1612a and the second telescopic end 1612b. This design makes the mechanical structure adaptable to different sizes and space requirements, improving the applicability and flexibility of the structure.

[0043] When the second connecting segment 1612 reaches a predetermined length, the first telescopic end 1612a and the second telescopic end 1612b are fixedly connected by the first filling block 1612c to achieve stable locking. This locking mechanism ensures the stability of the structure after adjustment, prevents the length from changing, and improves the safety and reliability of the structure.

[0044] As shown in Figure 2 In one embodiment, the first telescopic end 1612a and the second telescopic end 1612b are columnar structures with cavities inside, the cavity of the first telescopic end 1612a and the cavity of the second telescopic end 1612b are connected to form a filling cavity 1650, and the first filling block 1612c is arranged in the filling cavity 1650.

[0045] As shown in Figure 2As shown, the second connecting section 1612 also includes a second filling block 1612d. When the second connecting section 1612 reaches a preset length, the first filling block 1612c and the second filling block 1612d are installed into the filling cavity 1650 of the second connecting section 1612 in sequence and fixed. The first filling block 1612c is fixedly connected to the first telescopic end 1612a and the second telescopic end 1612b, and the second filling block 1612d is fixedly connected to the first telescopic end 1612a and the second telescopic end 1612b. After the first filling block 1612c and the second filling block 1612d are fixedly connected, they jointly form a block structure that matches the shape of the filling cavity 1650.

[0046] Exemplarily, the filling cavity 1650 is a cylindrical cavity, and the block structure jointly formed by the first filling block 1612c and the second filling block 1612d after being fixedly connected is a cylindrical block structure. However, in another embodiment, the filling cavity 1650 is a multi-prism cavity, and correspondingly, the block structure jointly formed by the first filling block 1612c and the second filling block 1612d after being fixedly connected is a multi-prism block structure, such as a four-prism or a six-prism.

[0047] In use, an opening is formed on the second connecting section 1612, which communicates with the filling cavity 1650. The first filling block 1612c and the second filling block 1612d are sequentially inserted into the filling cavity 1650 from the opening, and then the first filling block 1612c and the second filling block 1612d are fixed to the inner wall of the filling cavity 1650. Finally, the opening is sealed.

[0048] The first filling block 1612c and the second filling block 1612d are separately arranged, which facilitates installation into the filling cavity 1650 and prevents interference between the inner wall of the filling cavity 1650 and the first filling block 1612c and the second filling block 1612d, ensuring smooth progress of the project.

[0049] By arranging the first filling block 1612c and the second filling block 1612d, when they are installed and fixed in the filling cavity 1650, the first telescopic end 1612a and the second telescopic end 1612b can be firmly connected. This design significantly enhances the structural stability of the second connecting section 1612, ensuring that it will not accidentally telescope or deform when subjected to external forces or loads.

[0050] Due to the presence of the filling blocks, the overall rigidity of the second connecting section 1612 is improved, thereby being able to withstand greater pressure and load. This is particularly important for mechanical structures that need to withstand heavy objects, effectively preventing structural damage caused by overloading.

[0051] By installing the first filling block 1612c and the second filling block 1612d in sequence, the accurate locking of the second connecting section 1612 after reaching the preset length can be ensured. This design avoids the length change caused by the relative movement between the telescopic ends, ensuring the accuracy and reliability of the mechanical structure.

[0052] As shown in Figure 1 and Figure 2 In one embodiment, the V-shaped strut member 1600 further includes a first branch 1660, the first branch 1660 is provided with a second lug plate 1630, and the first branch 1660 is fixedly arranged on the cable clamp 1680 through the second lug plate 1630, for example, by welding, bolting or clamping.

[0053] As shown in Figure 1 The first branch 1660 is obliquely arranged on the first plane, which is the plane where the two struts 1610 are located, and the first branch 1660 and the two struts 1610 form a triangular support structure.

[0054] By arranging the first branch 1660 and the strut 1610 to form a triangular support structure, the stability of the overall structure is greatly enhanced, which can effectively resist external forces and vibrations, thereby maintaining the stability of the V-shaped strut member 1600. The triangular support structure not only increases the stability, but also improves the carrying capacity of the entire V-shaped strut member 1600. This structure can better disperse and transfer loads, so that the machine can maintain good performance when bearing heavy objects or external forces.

[0055] As shown in Figure 2 In one embodiment, the V-shaped strut member 1600 further includes a horse track tray 1670, which is arranged on the first branch 1660, and the horse track tray 1670 is provided with a containing groove 1672 for holding construction materials.

[0056] When the first filling block 1612c and the second filling block 1612d are welded, the horse track tray 1670 stably carries the welding materials, facilitates the workers to use the materials, reduces the time and physical consumption of material handling, and provides convenient conditions for welding operations.

[0057] The horse track tray 1670 stably carries the welding materials, providing a stable platform for welding operations, making the construction process smoother, reducing the construction difficulty caused by material movement or instability, and providing more convenient construction conditions for workers.

[0058] Exemplarily, the horse path tray 1670 is threadedly connected with the first support rod 1660, and rotation of the horse path tray 1670 can axially move on the first support rod 1660 to adjust the position of the horse path tray 1670, so that the horse path tray 1670 is more suitable for different construction environments and requirements. In another embodiment, the horse path tray 1670 is connected with the first support rod 1660 by clamping.

[0059] As shown in the drawings, Figure 2 In one embodiment, the first connecting segment 1611, the second connecting segment 1612 and the third connecting segment 1613 are coaxially arranged, so that the force transmission between the connecting segments is more uniform, and the risk of stress concentration or structural failure caused by structural deviation is reduced.

[0060] In a second aspect, the embodiments of the present application also provide a cable-supported grid device 1000, as shown in the drawings, Figure 1 and Figure 2 The cable-supported grid device 1000 includes a grid frame 1100, a hoop cable 1200 and a V-shaped bracing rod 1600 as any of the above embodiments.

[0061] As shown in the drawings, Figure 2 The first connecting segment 1611 of the V-shaped bracing rod 1600 is provided with a third lug plate 1640, and the first connecting segment 1611 is connected with the grid frame 1100 through the third lug plate 1640. The third lug plate 1640 is fixedly connected with the grid frame 1100, for example, by welding, bolting or clamping.

[0062] The hoop cable 1200 is connected with the cable clamp 1680 of the V-shaped bracing rod 1600, and the cable clamp 1680 provides a mounting position for the hoop cable 1200.

[0063] Through the connection of the V-shaped bracing rod 1600 with the grid frame 1100 and the connection of the hoop cable 1200 with the cable clamp 1680 on the V-shaped bracing rod 1600, the entire device forms a stable structural system. This connection mode increases the structural integrity between the grid frame 1100 and the bracing rod 1610, thereby improving the stability of the entire device.

[0064] The design of the V-shaped bracing rod 1600 can effectively disperse and transmit loads, so that the entire cable-supported grid device 1000 has stronger load-bearing capacity. At the same time, the hoop cable 1200 further enhances the load-bearing capacity of the device, so that it can withstand greater external loads.

[0065] As shown in the drawings, Figure 1 In one embodiment, the cable-supported grid device 1000 further includes a first radial cable 1300 and a second support rod 1400.

[0066] One end of the first radial cable 1300 is connected with the cable clamp 1680, and the other end of the first radial cable 1300 is connected with the grid frame 1100.

[0067] One end of the second strut 1400 is connected with the first radial cable 1300, and the other end of the second strut 1400 is connected with the grid frame 1100. The number of the second struts 1400 is at least one. When the number of the second struts 1400 is at least two, the second struts 1400 are arranged at intervals.

[0068] Exemplarily, the one end of the second strut 1400 is provided with an ear plate, and the other end of the second strut 1400 is provided with a cable fixing clamp. The one end of the second strut 1400 is fixedly connected with the first radial cable 1300 through the cable fixing clamp, and the other end of the second strut 1400 is fixedly connected with the grid frame 1100 through the ear plate.

[0069] Exemplarily, one second strut 1400 is provided. In another embodiment, as shown in Figure 1 two second struts 1400 are provided, which are arranged at intervals and sequentially distributed along the direction of the first radial cable 1300. Of course, in other embodiments, three, four, five, etc. second struts 1400 can also be provided.

[0070] Through the connection of the first radial cable 1300 with the grid frame 1100 and the connection of the second strut 1400 with the first radial cable 1300 and the grid frame 1100, a stable support system is formed. This arrangement can enhance the overall stability of the structure, enabling it to withstand greater loads and moments, thereby improving the reliability and safety of mechanical equipment.

[0071] The number of the second struts 1400 is at least one. When the number is at least two, they are arranged at intervals. This layout helps to disperse and balance the stress distribution in the structure, reducing stress concentration, thereby optimizing the mechanical properties of the structure. This not only prolongs the service life of the structure, but also reduces maintenance costs.

[0072] As shown in Figure 1 in an embodiment, the cable-supported grid device 1000 further comprises a radial cable support 1500 for supporting the grid frame 1100, and the radial cable support 1500 is arranged at intervals along the extension direction of the ring cable 1200 with the V-shaped strut 1600.

[0073] As shown in Figure 1 the radial cable support 1500 comprises a third strut 1520 and a second radial cable 1580.

[0074] One end of the third support rod 1520 is connected to the grid frame 1100. One end of the second radial cable 1580 is connected to the third support rod 1520, and the other end of the second radial cable 1580 is connected to the grid frame 1100.

[0075] For example, a lug plate is provided at one end of the third support rod 1520, and a connecting cable fixing clip is provided at the other end of the third support rod 1520. The third support rod 1520 is fixedly connected to the grid frame 1100 through the lug plate. The third support rod 1520 is fixedly connected to the second radial cable 1580 through the connecting cable fixing clip.

[0076] The installation of the radial cable support 1500 can effectively support the grid frame 1100 and prevent it from undergoing excessive deformation or displacement due to external forces (such as wind load, snow load, etc.), thereby enhancing the stability of the entire cable-supported grid device 1000.

[0077] The second radial cable 1580 connects the third support rod 1520 and the grid frame 1100, forming a support system that can distribute the load. This design can more evenly transfer the load acting on the grid frame 1100 to the entire structure through the radial cable support member 1500, reducing the risk of local stress concentration.

[0078] like Figure 1 As shown, in one embodiment, the radial cable support 1500 further includes a fourth support rod 1540 and a fifth support rod 1560.

[0079] One end of the fourth support rod 1540 is connected to the third support rod 1520, and the other end of the fourth support rod 1540 is connected to the grid frame 1100. The fourth support rod 1540 is inclined to the third support rod 1520. The third support rod 1520 and the fourth support rod 1540 form a triangular support structure, which significantly improves the stability and load-bearing capacity of the support and can effectively resist external loads and deformation.

[0080] One end of the fifth support rod 1560 is connected to the grid frame 1100, and the other end is connected to the second radial cable 1580. The fifth support rod 1560 is arranged parallel to the third support rod 1520. The fifth support rod 1560 is provided between the connection point of the second radial cable 1580 and the grid frame 1100 and the third support rod 1520. Exemplarily, only one fifth support rod 1560 is provided. In another embodiment, such as... Figure 1 As shown, two fifth support rods 1560 are provided. In other embodiments, three, four, or five fifth support rods 1560 may also be provided.

[0081] The fifth support rod 1560 is arranged parallel to the third support rod 1520, increasing the structure's stiffness in a specific direction. This parallel arrangement helps reduce the structure's flexural deformation under stress, thereby maintaining the overall stability and shape accuracy of the structure.

[0082] By the plurality of fifth supporting rods 1560, the stress concentration points are effectively dispersed. This design reduces the risk of local area damage due to excessive stress, prolonging the service life of the structure.

[0083] It should be noted that the features of the embodiments in the present application can be combined with each other without conflict.

[0084] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Those skilled in the art can make various modifications and changes to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A V-shaped strut member characterized by, Comprise: A brace (1610) comprising a first connecting section (1611), a second connecting section (1612) and a third connecting section (1613), the second connecting section (1612) is arranged between the first connecting section (1611) and the third connecting section (1613), the length of the second connecting section (1612) can be telescopic and locked, the first ear plate (1620) is arranged on the third connecting section (1613); The cable clamp (1680) is arranged with two brace (1610), two brace (1610) is V-shaped distribution on the cable clamp (1680), the cable clamp (1680) is connected with the first ear plate (1620) on the third connecting section (1613).

2. The V-shaped strut member according to claim 1, wherein The second connecting section (1612) comprises a first telescopic end (1612a) and a second telescopic end (1612b), the first telescopic end (1612a) is connected with the first connecting section (1611), the second telescopic end (1612b) is connected with the third connecting section (1613), the first telescopic end (1612a) and the second telescopic end (1612b) are telescopic matched to adjust the length of the second connecting section (1612); The second connecting section (1612) further comprises a first filling block (1612c), when the second connecting section (1612) reaches the preset length, the first filling block (1612c) is fixedly connected with the first telescopic end (1612a) and the second telescopic end (1612b), so that the first telescopic end (1612a) and the second telescopic end (1612b) are locked.

3. The V-shaped strut member according to claim 2, wherein The first telescopic end (1612a) and the second telescopic end (1612b) are columnar structures with cavities inside, the cavities of the first telescopic end (1612a) and the second telescopic end (1612b) are communicated to form a filling cavity (1650); The second connecting section (1612) further comprises a second filling block (1612d), when the second connecting section (1612) reaches the preset length, the first filling block (1612c) and the second filling block (1612d) are installed into the filling cavity (1650) of the second connecting section (1612) in sequence and fixed, the first filling block (1612c) is fixedly connected with the first telescopic end (1612a) and the second telescopic end (1612b), the second filling block (1612d) is fixedly connected with the first telescopic end (1612a) and the second telescopic end (1612b), after the first filling block (1612c) and the second filling block (1612d) are fixedly connected, they jointly form a block structure which is adapted to the shape of the filling cavity (1650).

4. The V-shaped strut member according to claim 1, wherein Further comprise: A first supporting rod (1660) is provided with a second lug plate (1630), and the first supporting rod (1660) is fixed on the cable clamp (1680) through the second lug plate (1630). The first supporting rod (1660) is obliquely arranged on a first plane, and the first plane is a plane where the two supporting rods (1610) are located.

5. The V-shaped strut member according to claim 4, wherein Further comprising: A horse path tray (1670) is arranged on the first supporting rod (1660), and the horse path tray (1670) is provided with a containing groove (1672).

6. The V-shaped strut member according to claim 1, wherein The first connecting section (1611), the second connecting section (1612) and the third connecting section (1613) are coaxially arranged.

7. A cable supported grid apparatus (1000) characterized by, Comprising: A grid frame (1100); The V-shaped supporting rod (1600) according to any one of claims 1 to 6 is provided with a third lug plate (1640) on the first connecting section (1611), and the first connecting section (1611) is connected to the grid frame (1100) through the third lug plate (1640). A circumferential cable (1200) is connected to the cable clamp (1680) of the V-shaped supporting rod (1600), and the cable clamp (1680) provides a mounting position for the circumferential cable (1200).

8. The cable supported grid apparatus (1000) according to claim 7, wherein, Further comprising: A first radial cable (1300) is connected to the cable clamp (1680) at one end, and the other end of the first radial cable (1300) is connected to the grid frame (1100); A second supporting rod (1400) is connected to the first radial cable (1300) at one end, and the other end of the second supporting rod (1400) is connected to the grid frame (1100). The number of the second supporting rods (1400) is at least one, and when the number of the second supporting rods (1400) is at least two, the second supporting rods (1400) are arranged at intervals.

9. The cable supported grid apparatus (1000) according to claim 7, wherein, Further comprising: A radial cable support (1500) is used to support the grid frame (1100), and the radial cable support (1500) is arranged at intervals along the extension direction of the circumferential cable (1200) with the V-shaped supporting rod (1600); The radial cable support (1500) comprises: A third supporting rod (1520) is connected to the grid frame (1100) at one end; A second radial cable (1580) is connected to the third supporting rod (1520) at one end, and the other end of the second radial cable (1580) is connected to the grid frame (1100).

10. The cable supported grid apparatus (1000) according to claim 9, wherein, The radial cable support (1500) further comprises: A fourth strut (1540) has one end connected to the third strut (1520) and the other end connected to the grid frame (1100), and is inclined to the third strut (1520); A fifth strut (1560) has one end connected to the grid frame (1100) and the other end connected to the second radial cable (1580), and is arranged in parallel to the third strut (1520).